- Density of the material
- 1000kg/m³
- Local gravitational acceleration
- 9.80665m/s²
9,806.65N/m³
Open with these values9,806.65N/m³
Result: 9,806.65 N/m³Specific weight is density times gravity: fresh water at 1000 kg/m³ weighs 9806.65 N per cubic metre on Earth. Unlike density it changes with location — the same water is only 1620 N/m³ on the Moon. Do not confuse it with specific gravity, which is a dimensionless ratio and carries no g.
Held fixed: Density of the material 1,000.000 kg/m³.
| Local gravitational acceleration (m/s²) | Result (N/m³) |
|---|---|
| 2.50000 | 2,500.00 |
| 5.00000 | 5,000.00 |
| 7.50000 | 7,500.00 |
| 9.80665Your value | 9,806.65 |
| 10.00000 | 10,000.00 |
| 12.50000 | 12,500.00 |
| 15.00000 | 15,000.00 |
| 17.50000 | 17,500.00 |
9,806.65N/m³
Open with these values26,477.95N/m³
Open with these values1,620.00N/m³
Open with these valuesγ = ρ × g
| Density, gravity | Material and place | γ (N/m³) |
|---|---|---|
| 1000, 1.62 | Fresh water on the Moon | 1620 |
| 789, 9.80665 | Ethanol on Earth | 7737.44685 |
| 1000, 9.80665 | Fresh water on Earth | 9806.65 |
| 2700, 9.80665 | Aluminium on Earth | 26477.955 |
| 13534, 9.80665 | Mercury on Earth | 132723.2011 |
Multiply the density by the local gravitational acceleration: γ = ρ × g. Use kilograms per cubic metre and metres per second squared to get newtons per cubic metre. Fresh water at 1000 kg/m³ on Earth gives 9806.65 N/m³.
Specific weight, also called weight density, is the weight of a material per unit of volume. It says how heavy a cubic metre of a substance is under gravity, in newtons per cubic metre. Engineers use it for hydrostatic pressure, buoyancy and structural loads.
Density is mass per unit volume in kg/m³ and does not depend on gravity. Specific weight is weight per unit volume in N/m³ and equals density times gravity. The same material has the same density everywhere but a smaller specific weight where gravity is weaker.
No. Specific gravity is a dimensionless ratio comparing a material's density to that of water, so it has no units. Specific weight is a physical quantity in N/m³ that gives the actual weight per cubic metre.
Yes, in direct proportion. Water has a specific weight of about 9806.65 N/m³ on Earth but only around 1620 N/m³ on the Moon, even though its density stays at 1000 kg/m³.
Information, not professional advice.
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